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The composition, supramolecular organisation and thermal properties of milk fat: a new challenge for the quality of food products
Author(s) -
Arnaud Mimouni,
Saı̈d Bouhallab,
MarieHélène Famelart,
D. Naegele,
Pierre Schuck
Publication year - 2007
Publication title -
dairy science and technology
Language(s) - English
Resource type - Journals
eISSN - 1297-9694
pISSN - 0023-7302
DOI - 10.1051/lait:2007015
Subject(s) - chemistry , humanities , food science , microbiology and biotechnology , art , biology
The use of spray drying for dehydration of acid whey is generally limited by the appearance of uncontrolled thickening and solidifying of the whey mass during the lactose crystallization step. The origin of this physical change is still unknown and probably linked to complex interactions between physical properties and chemical composition of these products. To understand this phenomenon, we simulated the thickening of concentrated acid whey on a laboratory scale by measuring the flow resistance changes as a function of time and whey composition. The thickening process was characterized by an amplitude of torque and a lag time (induction time). Thickening of lactic acid whey concentrate occurred regardless of the presence of whey proteins or lactose crystals. Moreover, this work clearly demonstrated that the thickening process was due to the formation of filamentous structures corresponding to calcium lactate crystals and showed a large dependence on calcium and lactate contents, pH, and phosphate concentration

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